In this paper a technological approach for the fabrication of deformable electronic surfaces is reviewed. The approach consists of the fabrication of thin film devices on a flat but deformable substrate such as a plastic or glass foil using conventional processing tools. After the fabrication, the foil can be deformed to other shapes by air pressure or stamping. A spherical cap shape is used as a model system. This deformation induces large stress in the substrate, which is plastically deformed. To avoid damage to the thin film devices, they are built on top of "hard" islands, which limit the strain in the devices to manageable levels. Amorphous silicon TFT's on silicon nitride islands show little qualitative change in characteristics after...
The mechanics of film-on-foil devices is presented in the context of thin-film transistors on steel ...
AbstractElectronic systems with large stretchability have many applications. A precisely controlled ...
The emergence of wearable electronics is leading away from glass substrates for the display backplan...
In this paper a technological approach for the fabrication of deformable electronic surfaces is revi...
Novel large-area electronics, such as electronic paper, sensor skin, and electrotextiles, requires b...
Deformable electronics have diverse applications, such as curved imaging surfaces, sensor skins, and...
In this paper, the mechanics of rolling and deforming thin foil substrates in two and three dimensio...
In this paper, the mechanics of rolling and deforming thin foil substrates in two and three dimensio...
In this paper, the mechanics of rolling and deforming thin foil substrates in two and three dimensio...
Flexible electronics will have inorganic devices grown at elevated temperatures on free-standing foi...
There is a growing interest in the design and fabrication of flexible and rugged electronics particu...
In this paper, amorphous-silicon (a-Si:H) thin-film transistors (TFTs) were fabricated on a plastic ...
In this paper, amorphous-silicon (a-Si:H) thin-film transistors (TFTs) were fabricated on a plastic ...
In this paper, amorphous-silicon (a-Si:H) thin-film transistors (TFTs) were fabricated on a plastic ...
In this paper, amorphous-silicon (a-Si:H) thin-film transistors (TFTs) were fabricated on a plastic ...
The mechanics of film-on-foil devices is presented in the context of thin-film transistors on steel ...
AbstractElectronic systems with large stretchability have many applications. A precisely controlled ...
The emergence of wearable electronics is leading away from glass substrates for the display backplan...
In this paper a technological approach for the fabrication of deformable electronic surfaces is revi...
Novel large-area electronics, such as electronic paper, sensor skin, and electrotextiles, requires b...
Deformable electronics have diverse applications, such as curved imaging surfaces, sensor skins, and...
In this paper, the mechanics of rolling and deforming thin foil substrates in two and three dimensio...
In this paper, the mechanics of rolling and deforming thin foil substrates in two and three dimensio...
In this paper, the mechanics of rolling and deforming thin foil substrates in two and three dimensio...
Flexible electronics will have inorganic devices grown at elevated temperatures on free-standing foi...
There is a growing interest in the design and fabrication of flexible and rugged electronics particu...
In this paper, amorphous-silicon (a-Si:H) thin-film transistors (TFTs) were fabricated on a plastic ...
In this paper, amorphous-silicon (a-Si:H) thin-film transistors (TFTs) were fabricated on a plastic ...
In this paper, amorphous-silicon (a-Si:H) thin-film transistors (TFTs) were fabricated on a plastic ...
In this paper, amorphous-silicon (a-Si:H) thin-film transistors (TFTs) were fabricated on a plastic ...
The mechanics of film-on-foil devices is presented in the context of thin-film transistors on steel ...
AbstractElectronic systems with large stretchability have many applications. A precisely controlled ...
The emergence of wearable electronics is leading away from glass substrates for the display backplan...